Structural Basis of Substrate Methylation and Inhibition of SMYD2

被引:176
作者
Ferguson, Andrew D. [1 ]
Larsen, Nicholas A. [2 ]
Howard, Tina [3 ]
Pollard, Hannah [3 ]
Green, Isabelle [3 ]
Grande, Christie [2 ]
Cheung, Tony [2 ]
Garcia-Arenas, Renee [2 ]
Cowen, Scott [2 ]
Wu, Jiaquan [2 ]
Godin, Robert [2 ]
Chen, Huawei [2 ]
Keen, Nicholas [2 ]
机构
[1] AstraZeneca, DECS Struct Chem, Waltham, MA 02451 USA
[2] AstraZeneca, Oncol Innovat Med Unit, Waltham, MA 02451 USA
[3] AstraZeneca, DECS Struct Chem, Macclesfield SK10 4TG, Cheshire, England
关键词
HISTONE METHYLATION; KINETIC MECHANISM; P53; ACTIVITY; METHYLTRANSFERASE; PROTEIN; SPECIFICITY; PROLIFERATION; SEQUENCE; ENCODES; DOMAINS;
D O I
10.1016/j.str.2011.06.011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Protein lysine methyltransferases are important regulators of epigenetic signaling. These enzymes catalyze the transfer of donor methyl groups from S-adenosylmethionine to specific acceptor lysines on histones, leading to changes in chromatin structure and transcriptional regulation. These enzymes also methylate nonhistone protein substrates, revealing an additional mechanism to regulate cellular physiology. The oncogenic protein SMYD2 represses the functional activities of the tumor suppressor proteins p53 and Rb, making it an attractive drug target. Here we report the discovery of AZ505, a potent and selective inhibitor of SMYD2 that was identified from a high throughput chemical screen. We also present the crystal structures of SMYD2 with p53 substrate and product peptides, and notably, in complex with AZ505. This substrate competitive inhibitor is bound in the peptide binding groove of SMYD2. These results have implications for the development of SMYD2 inhibitors, and indicate the potential for developing novel therapies targeting this target class.
引用
收藏
页码:1262 / 1273
页数:12
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